The lifetime of tungsten (W) monoblocks under fusion conditions is ambivalent. In this work, the microstructure dependent mechanical behaviour of pulsed high heat flux (HHF) exposed W monoblock is investigated. Two different microstructural states, i.e. initial (deformed) and recrystallized, both machined from HHF exposed monoblocks are tested using tensile and small punch tests. The initial microstructural state reveals a higher fraction of low angle boundaries along with a preferred orientation of crystals. Following HHF exposure, the recrystallized state exhibits weakening of initial texture along with a higher fraction of high angle boundaries. Irrespective of the testing methodology, both the microstructural states display brittle fail...
The strain rate dependence of the brittle-to-ductile transition (BDT) temperature was investigated i...
Plastic deformation of tungsten wire is an effective source of toughening tungsten fibre-reinforced ...
Surface damage and structure evolution of the full tungsten ITER divertor under transient heat loads...
The lifetime of tungsten (W) monoblocks under fusion conditions is ambivalent. In this work, the mic...
Extending the lifetime of tungsten based plasma facing components for future fusion reactors remains...
In the full-tungsten divertor qualification program at ITER Organization, macro-cracks, so called se...
Tungsten components inside fusion reactors are subjected to extreme conditions, including an excepti...
Tungsten and tungsten-based alloys are the leading material choices for the divertor plasma facing c...
The lifetime of the divertor in tokamak nuclear fusion reactors is uncertain, due to the severe heat...
In order to support the development of the 5 MW spallation target for the European Spallation Source...
The recrystallization assisted microstructural changes during cyclic heat exposure are surmised detr...
International audienceTungsten is the privileged option as plasma-facing material for the divertor r...
The strain rate dependence of the brittle-to-ductile transition (BDT) temperature was investigated i...
Plastic deformation of tungsten wire is an effective source of toughening tungsten fibre-reinforced ...
Surface damage and structure evolution of the full tungsten ITER divertor under transient heat loads...
The lifetime of tungsten (W) monoblocks under fusion conditions is ambivalent. In this work, the mic...
Extending the lifetime of tungsten based plasma facing components for future fusion reactors remains...
In the full-tungsten divertor qualification program at ITER Organization, macro-cracks, so called se...
Tungsten components inside fusion reactors are subjected to extreme conditions, including an excepti...
Tungsten and tungsten-based alloys are the leading material choices for the divertor plasma facing c...
The lifetime of the divertor in tokamak nuclear fusion reactors is uncertain, due to the severe heat...
In order to support the development of the 5 MW spallation target for the European Spallation Source...
The recrystallization assisted microstructural changes during cyclic heat exposure are surmised detr...
International audienceTungsten is the privileged option as plasma-facing material for the divertor r...
The strain rate dependence of the brittle-to-ductile transition (BDT) temperature was investigated i...
Plastic deformation of tungsten wire is an effective source of toughening tungsten fibre-reinforced ...
Surface damage and structure evolution of the full tungsten ITER divertor under transient heat loads...